哺乳动物高敏锐度视力视网膜特化的演化是对觅食策略和形态限制的回应。

IF 3.4 1区 生物学 Q2 EVOLUTIONARY BIOLOGY
Evolution Letters Pub Date : 2025-01-17 eCollection Date: 2025-04-01 DOI:10.1093/evlett/qrae072
Emily E K Kopania, Nathan L Clark
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引用次数: 0

摘要

视觉是一个复杂的感官系统,需要细胞和形态特征之间的协调,目前仍不清楚特征之间的功能关系如何与生态选择压力相互作用,从而形成视觉的进化。许多物种的视网膜上都有由神经节细胞密度模式定义的特化高视觉敏锐度区域,这些区域可能会随着生态特征的变化而进化。例如,神经节细胞密度可向视网膜中心径向增加,形成中央区,这被认为可提高捕食者视野中心的敏锐度。另一个例子是水平条纹,神经节细胞在整个视网膜上以水平模式密集,这被认为在地平线为主的生境中是有益的。在形态学层面上,许多人提出捕食者会选择高轨道会聚角或朝前的眼睛。我们在整个有蹄类哺乳动物的系统发育框架中检验了这些假说,发现水平条纹与地平线为主的栖息地之间的联系得到了支持。然而,我们并没有发现轨道趋同与捕食之间有明显的联系。我们还测试了视网膜特化是否会随着轨道辐辏角的变化而进化。我们发现,水平条纹与侧视眼有关,可能有利于全景视觉。以前的研究观察到,一些侧视眼物种的视网膜中央区向颞侧偏移,因此高敏锐度区域会向前凸出,但这种关系尚未得到定量检验。我们发现,中心区与视网膜中心的颞侧距离与轨道辐辏成反比,这与预测的结果一致。我们的研究表明,轨道辐辏与视网膜特化之间存在密切关系。我们发现,视觉生态学和性状之间的功能相互作用在哺乳动物眼部性状的进化过程中发挥了重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mammalian retinal specializations for high acuity vision evolve in response to both foraging strategies and morphological constraints.

Vision is a complex sensory system that requires coordination among cellular and morphological traits, and it remains unclear how functional relationships among traits interact with ecological selective pressures to shape the evolution of vision. Many species have specialized high visual acuity regions in the retina defined by patterns of ganglion cell density, which may evolve in response to ecological traits. For example, ganglion cell density can increase radially towards the center of the retina to form an area centralis, which is thought to improve acuity towards the center of the visual field in predators. Another example is the horizontal streak, where ganglion cells are dense in a horizontal pattern across the retina, which is thought to be beneficial in horizon-dominated habitats. At the morphological level, many have proposed that predation selects for high orbit convergence angles, or forward-facing eyes. We tested these hypotheses in a phylogenetic framework across eutherian mammals and found support for the association between the horizontal streak and horizon-dominated habitats. However, we did not find a significant association between orbit convergence and predation. We also tested if retinal specializations evolve in response to orbit convergence angles. We found that horizontal streaks were associated with side-facing eyes, potentially facilitating panoramic vision. Previous studies observed that some species with side-facing eyes have an area centralis shifted towards the temporal side of the retina, such that the high acuity region would project forward, but this relationship had not been tested quantitatively. We found that the temporal distance of the area centralis from the center of the retina was inversely correlated with orbit convergence, as predicted. Our work shows a strong relationship between orbit convergence and retinal specializations. We find support that both visual ecology and functional interactions among traits play important roles in the evolution of ocular traits across mammals.

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来源期刊
Evolution Letters
Evolution Letters EVOLUTIONARY BIOLOGY-
CiteScore
13.00
自引率
2.00%
发文量
35
审稿时长
10 weeks
期刊介绍: Evolution Letters publishes cutting-edge new research in all areas of Evolutionary Biology. Available exclusively online, and entirely open access, Evolution Letters consists of Letters - original pieces of research which form the bulk of papers - and Comments and Opinion - a forum for highlighting timely new research ideas for the evolutionary community.
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